Lukashchuk Anton, Yildirim Halil Kerim, Bancora Andrea, Lihachev Grigory, Liu Yang, Qiu Zheru, Ji Xinru, Voloshin Andrey, Bhave Sunil A, Charbon Edoardo, Kippenberg Tobias J
Institute of Physics, Swiss Federal Institute of Technology Lausanne (EPFL), CH-1015, Lausanne, Switzerland.
Advanced Quantum Architecture Laboratory (AQUA), Swiss Federal Institute of Technology Lausanne (EPFL), CH-2002, Neuchâtel, Switzerland.
Nat Commun. 2024 Apr 11;15(1):3134. doi: 10.1038/s41467-024-47478-z.
Chip-scale integration is a key enabler for the deployment of photonic technologies. Coherent laser ranging or FMCW LiDAR, a perception technology that benefits from instantaneous velocity and distance detection, eye-safe operation, long-range, and immunity to interference. However, wafer-scale integration of these systems has been challenged by stringent requirements on laser coherence, frequency agility, and the necessity for optical amplifiers. Here, we demonstrate a photonic-electronic LiDAR source composed of a micro-electronic-based high-voltage arbitrary waveform generator, a hybrid photonic circuit-based tunable Vernier laser with piezoelectric actuators, and an erbium-doped waveguide amplifier. Importantly, all systems are realized in a wafer-scale manufacturing-compatible process comprising III-V semiconductors, silicon nitride photonic integrated circuits, and 130-nm SiGe bipolar complementary metal-oxide-semiconductor (CMOS) technology. We conducted ranging experiments at a 10-meter distance with a precision level of 10 cm and a 50 kHz acquisition rate. The laser source is turnkey and linearization-free, and it can be seamlessly integrated with existing focal plane and optical phased array LiDAR approaches.
芯片级集成是光子技术部署的关键推动因素。相干激光测距或调频连续波激光雷达是一种感知技术,它受益于瞬时速度和距离检测、人眼安全操作、远距离以及抗干扰能力。然而,这些系统的晶圆级集成受到了对激光相干性、频率捷变以及光放大器必要性的严格要求的挑战。在此,我们展示了一种光子 - 电子激光雷达光源,它由基于微电子的高压任意波形发生器、带有压电致动器的基于混合光子电路的可调谐游标激光器以及掺铒波导放大器组成。重要的是,所有系统均通过包含III - V族半导体、氮化硅光子集成电路和130纳米硅锗双极互补金属氧化物半导体(CMOS)技术的晶圆级制造兼容工艺实现。我们在10米距离处进行了测距实验,精度水平为10厘米,采集速率为50千赫兹。该激光源是交钥匙式且无需线性化的,并且可以与现有的焦平面和光学相控阵激光雷达方法无缝集成。